Abstract:
The storage device (1) comprises a storage compartment (2), comprising an upper opening (10), and a lid (6), said lid (6) being movable between a closed position and a first opened position, wherein the storage compartment (2) is accessible from a first side (12) of the opening (10), and a second opened position, wherein the storage compartment (2) is accessible from a second side (14) of the opening (10). The storage compartment (2) comprises a locking device comprising a first locking element (16) and a second locking element (18), respectively extending on the first side (12) and the second side (14) of the opening (10), each locking element (16, 18) being engaged in the lid (6) in the closed position in order to lock said lid (6), the storage compartment (2) further comprising an unlocking device selectively actuable to retract the first locking element (16) from the lid (6), while maintaining the second locking element (18) engaged in the lid (6), to move the lid (6) towards its first opened position, and to retract the second locking element (18) from the lid (6), while maintaining the first locking element (16) engaged in the lid (6), to move the lid (6) towards its second opened position.
Abstract:
A vehicle body rear structure that is able to rotatably support a tailgate at a left hinge attachment section of a rear outer panel with a left hinge member therebetween. The left hinge member is provided with: a vehicle-body-side hinge section affixed to the left hinge attachment section; and a door-side hinge section connected rotatably to the vehicle-body-side hinge section. A left rear combination lamp is provided to the rear outer panel in a manner so as to cover the vehicle-body-side hinge section from the outside of the vehicle body.
Abstract:
A sliding door with reversible hand configurations can include a plurality of mounting locations along a top and a bottom edge thereof. The plurality of mounting locations can be configured to allow the sliding door to selectively hang and operate according to multiple orientations in order to satisfy site-specific handedness requirements. In one implementation, the sliding door includes a door frame and mounting hardware for selectively mounting the sliding door to a roller track affixed near the upper portion of a doorway.
Abstract:
The hinge has a bracket for mounting on a door frame, an adjusting plate for securement to a door, a flange pivotally mounted on the bracket and disposed over the adjusting plate and captive nut assemblies for securing the flange to the adjusting plate in a releasable longitudinally adjustable manner. Loosening of the captive nut assemblies allows the door to be moved laterally of the frame before tightening of the captive nut assemblies fixes the door relative to the frame.
Abstract:
An arrangement is disclosed for a meter cabinet, distribution cabinet or empty housing, including a frame and a door, wherein the frame can carry a door and the door is attached pivotally to the frame on its hinge side. The door may be aligned in relation to its frame quickly and without problems, with an adjustment device for aligning the door in the closed condition, the adjustment device being associated with the frame.
Abstract:
A motor vehicle door hinge, having a pillar fitting able to be mounted on a vehicle body, and a door fitting able to be mounted on a motor vehicle door, which are connected to each other in an articulated manner by a hinge pin connected to either the pillar fitting or the door fitting in a rotation-resistant manner and to the remaining one of the pillar fitting or the door fitting in an articulated manner, and an arresting unit having a detent body carrier connected to the hinge pin in a rotation-resistant manner and radially extending to the latter and having a detent body, and a detent element adjustable on the other one of the pillar fitting or the door fitting with respect to the detent body carrier, coaxially arranged with respect to the hinge pin axis and in engagement with the detent body and including at least one detent notch, and arranged within a housing surrounding the hinge pin and the detent body carrier.
Abstract:
A door closer comprises a piston cooperating with a rotating pinion. Upon rotation of the pinion in the door opening direction, the piston moves toward the second end of the housing forcing fluid from a second variable volume chamber through a passage to a first variable volume chamber and compressing a spring assembly for storing energy. The spring assembly urges the piston toward the first end of the housing for forcing fluid from the first variable volume chamber to the second variable volume chamber and rotating the pinion in the door closing direction. A controller controls the position of a valve in the passage based on the sensed angular position of a door and the position of the valve for determining the amount of hydraulic fluid flowing through the valve.
Abstract:
A housing for at least partially accommodating a furniture fitting is designed such that it can be changed in length along a longitudinal axis of the housing.
Abstract:
A movable carriage assembly for a door track or window track is adapted to support a door or window. The carriage assembly includes a lower carriage removably joined to an upper carriage, forming an elongate gap there between which is constructed and adapted to provide a sliding surface element for a track dust cover. When the carriage assembly moves along the track, the dust cover moves through the gap of the carriage assembly and over the sliding surface element whereby the dust cover is caused to disengage from the track and re-engage with track after the carriage assembly has passed. There is also disclosed a method of installing the carriage assembly in a window or door opening for a door or window.
Abstract:
Movable partition systems include a movable partition, a soffit positioned along an edge of a track, and a molding member engaged with the soffit opposite the track. The molding member is at least partially abutted against a wall and configured to be adjusted laterally relative to the soffit. Methods of installing a movable partition system include suspending a track from a support member, inserting an end of a soffit between first and second ends of a molding member, and coupling the soffit to an edge of the track or a wall of a header structure. Methods of forming a header structure for a movable partition include disposing a track for a movable partition at least partially in a header recess of a header structure, engaging a molding member with a soffit, and coupling the soffit with the track and between the track and a wall of the header structure.